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CVE-2026-80810UNKNOWNMITRENVD대응게시일: 2026. 09. 04.수정일: 2026. 09. 04.CNA: 416baaa9-dc9f-4396-8d5f-8c081fb06d67Received

In the Linux kernel, the following vulnerability has been resolved: io_uring/rsrc: fix folio size overflow in io_vec_fill_bvec() io_vec_fi

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0.2%상위 93.7%

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상세 설명

In the Linux kernel, the following vulnerability has been resolved:

io_uring/rsrc: fix folio size overflow in io_vec_fill_bvec()

io_vec_fill_bvec() computes the folio size with a plain int 1:

text
1unsigned long folio_size = 1 << imu->folio_shift;

imu->folio_shift is unsigned int and comes from folio_shift() of the
folio backing the registered buffer, so it can be 32 or more on a 64 bit
kernel. Shifting int 1 that far is undefined, and on x86 and arm64 the
count is taken modulo 32, so a shift of 34 yields 4 rather than 16G.
Every other folio_shift shift in this file already uses 1UL.

The result is that the segment estimate and the fill loop disagree.
io_estimate_bvec_size() sizes the bvec array with the real shift:

text
1max_segs += (iov[i].iov_len >> shift) + 2;

so a 1M iovec on a 16G folio is charged 2 segments, while
io_vec_fill_bvec() then walks the same iovec in folio_size chunks of 4
bytes and writes res_bvec[bvec_idx] a quarter of a million times, past
the end of the array it was given. src_bvec is advanced once per
iteration as well, so imu->bvec is read past its end at the same time.
validate_fixed_range() only checks that the range is inside the
registered buffer and does not bound the segment count.

Reaching it needs a folio with a shift of at least 32, which means a
gigantic hugetlb page: 16G on arm64 with 64K pages, where
CONT_PMD_SHIFT is 34 and hugetlb_add_hstate(CONT_PMD_SHIFT - PAGE_SHIFT)
registers that size, and likewise on powerpc. x86_64 tops out at 1G, so
a shift of 30, which still fits in int and is unaffected.

Use 1UL, as the rest of the file does.

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